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Diabetic Kidney Disease: Disease Progression Driven by Positive Feedback Loops and Therapeutic Strategies Targeting
Gaozhi P Mo1, Yao Zhu1, Yue You1
1Department of Critical Care Medicine, Zhongnan Hospital of Wuhan University, Wuhan, Hubei, People's Republic of China.
Abstract:
Diabetic kidney disease (DKD) is a major complication of diabetes mellitus, with its pathogenesis intricately regulated by dynamic feedback mechanisms. This comprehensive review systematically analyzes the hierarchical feedback networks driving DKD progression, spanning from systemic interactions to molecular cross-talks. We reveal that self-amplifying positive feedback loops dominate the disease process, manifested through three key dimensions: (1) The systemic triad of hyperglycemia-hypertension-proteinuria establishes a vicious cycle accelerating renal dysfunction; (2) Cellular homeostasis collapse through cross-amplified cell death modalities (apoptosis, pyroptosis, ferroptosis) and cell cycle dysregulation; (3) Molecular cascades centered on AGE/RAGE signaling that fuel chronic inflammation and fibrotic transformation. Collectively, these form a major positive feedback loop where PKC activation, oxidative stress propagation, and TGF-β-mediated fibrosis induced by hyperglycemia lead to progressive renal deterioration and fibrosis. Therapeutically, we propose a dual intervention strategy targeting both the acute phase through AGE/RAGE axis inhibition, coupled with chronic phase via precision modulation of fibrotic pathways. These findings redefine DKD progression as a self-reinforcing network disorder, providing a roadmap for developing multi-target therapies that disrupt pathological feedback loops while preserving renal repair mechanisms.
Insights
Diabetic kidney disease (DKD) progresses through self-amplifying feedback loops involving hyperglycemia, hypertension, and cellular damage. Targeting these pathological networks offers a new therapeutic strategy for DKD.
Area of Science:
- Nephrology
- Endocrinology
- Molecular Biology
Background:
- Diabetic kidney disease (DKD) is a significant complication of diabetes mellitus.
- Its progression is driven by complex, dynamic feedback mechanisms within the kidney.
Purpose of the Study:
- To systematically review the hierarchical feedback networks that drive DKD progression.
- To identify key dimensions and molecular pathways involved in DKD pathogenesis.
- To propose novel therapeutic strategies targeting these feedback loops.
Main Methods:
- Comprehensive literature review of studies on DKD pathogenesis.
- Analysis of systemic, cellular, and molecular feedback mechanisms.
- Identification of key signaling pathways (e.g., AGE/RAGE, PKC, TGF-β).
Main Results:
- DKD progression is characterized by self-amplifying positive feedback loops.
- Key dimensions include the hyperglycemia-hypertension-proteinuria triad, cellular homeostasis collapse, and AGE/RAGE signaling.
- Hyperglycemia-induced pathways promote inflammation and fibrosis, leading to renal deterioration.
Conclusions:
- DKD is a network disorder driven by pathological feedback loops.
- A dual therapeutic strategy targeting AGE/RAGE and fibrotic pathways is proposed.
- Disrupting these feedback loops is crucial for developing effective multi-target therapies for DKD.
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